Author:
Zafiri Daphne,Salinas-Hernández Ximena I.,De Biasi Eloah S.,Rebelo Leonor,Duvarci Sevil
Abstract
ABSTRACTLearning by experience that certain cues in the environment predict danger is crucial for survival. How dopamine (DA) circuits drive this form of associative learning is not fully understood. Here, we demonstrate that DA neurons projecting to a unique subregion of the dorsal striatum, the posterior tail of the striatum (TS), encode an aversive prediction error (PE) signal during associative fear learning. These DA neurons are necessary specifically during acquisition of fear learning, but not once the fear memory is formed, and are not required for forming cue-reward associations. Notably, temporally-precise excitation of DA terminals in TS is sufficient to enhance fear learning. Furthermore, neuronal activity in TS is crucial for acquisition of associative fear learning and learning-induced activity patterns in TS critically depend on DA input. Together, our results reveal that DA PE signaling in a non-canonical nigrostriatal circuit is crucial for driving associative fear learning.
Publisher
Cold Spring Harbor Laboratory
Cited by
1 articles.
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